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Nonlinear Attitude and Bias Observer Design with a Gibbs-Inspired Cost Function Using Direct Vector Measurements

机译:基于直接矢量测量的具有Gibbs启发成本函数的非线性态度和偏差观测器设计

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This paper considers the problem of rigid-body attitude and rate-gyro bias estimation. Available measurements include a biased rate-gyro measurement and two or more linearly independent vector measurements. The gradient-based observer design methodology for Lie groups is employed to derive a provably convergent attitude observer. The observer propagates the state estimate along the gradient descent direction of a proposed attitude error function. The use of the proposed attitude error function, which is inspired by previous cost functions using the Gibbs parameterization, results in an innovation term that aggressively drives the attitude error to zero, leading to fast convergence of the observer. The innovation term can be constructed directly from the vector measurements. Numerical results are included that demonstrate the desirable convergence properties of the observer compared to previous results.
机译:本文考虑了刚体姿态和速率陀螺偏差估计的问题。可用的测量包括偏置速率陀螺仪测量和两个或多个线性独立的矢量测量。李群的基于梯度的观测器设计方法被用来推导可证明是收敛的姿态观测器。观察者沿着提议的姿态误差函数的梯度下降方向传播状态估计。受先前使用Gibbs参数化的成本函数启发的拟议姿态误差函数的使用产生了一个创新术语,该术语积极地将姿态误差驱动为零,从而导致观察者快速收敛。创新项可以直接从矢量测量中构建。包含的数值结果表明,与先前的结果相比,观察者具有理想的收敛特性。

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